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AXI based DMA Memory System Testbench Architecture Using UVM Harness Technique

机译:使用UVM线束技术的基于AXI的DMA存储器系统测试平台架构

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SoC (System on Chip) designs have become increasingly complex and dense containing multiple subsystems. Functional verification of such multi-block systems demands the need for a highly reusable and scalable testbench. Universal Verification Methodology (UVM) test bench addresses these needs with some challenges. In a traditional UVM testbench, each signal on every block needs to be reconnected to its interfaces in a system testbench. But, this task becomes ominous when there are multiple blocks with many signals requiring reconnections. Such connections also limit the ability to inject stimulus into any portion or block within the system. Enhanced UVM Harness technique provides a solution to these challenges. With this approach, connections made in a block-level test bench can be reused in a multi-block testbench and specific blocks within the system can be tested without any changes to testbench. In this paper we have applied enhanced UVM Harness technique to verification of AXI based DMA Memory system and demonstrated verification of a specific portion - AXI based Memory without changes to testbench. We have analyzed the benefits and challenges in enhancing an existing UVM based testbench to support Harness technique.
机译:SoC(片上系统)设计已经变得越来越复杂和密集,包含多个子系统。这种多块系统的功能验证要求有一个高度可重用和可扩展的测试平台。通用验证方法(UVM)测试平台通过一些挑战解决了这些需求。在传统的UVM测试平台中,每个模块上的每个信号都需要重新连接到系统测试平台中的接口。但是,当存在多个带​​有许多信号需要重新连接的块时,此任务就变得不祥。这样的连接也限制了将刺激注入系统内任何部分或模块的能力。增强的UVM线束技术为这些挑战提供了解决方案。使用这种方法,可以在多块测试台中重用在块级测试台中建立的连接,并且可以测试系统内的特定块,而无需更改测试台。在本文中,我们将增强的UVM线束技术应用于基于AXI的DMA内存系统的验证,并演示了特定部分的验证-基于AXI的内存,而无需更改测试台。我们已经分析了增强现有的基于UVM的测试平台以支持线束技术的好处和挑战。

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